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首页> 外文期刊>The Journal of Chemical Physics >EFFECTS OF ISOTOPIC SUBSTITUTION ON ELEY-RIDEAL REACTIONS AND ADSORBATE-MEDIATED TRAPPING
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EFFECTS OF ISOTOPIC SUBSTITUTION ON ELEY-RIDEAL REACTIONS AND ADSORBATE-MEDIATED TRAPPING

机译:同位素取代对ELEY-平移反应和吸附剂介导的俘获的影响

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摘要

The dynamics of a direct reaction between a gas phase H atom and an H atom adsorbed on a Cu surface are explored. This exothermic Eley-Rideal reaction is studied by implementing both 3D quantum and quasiclassical scattering calculations. The metal surface is assumed to be hat. The effects of substituting either or both of the H atoms with D are examined in detail for five different model potential energy surfaces. The reaction cross sections, and the translational, rotational, and vibrational state distributions of the product molecules are computed. A process is considered in which the incident atom transfers enough of its kinetic energy normal to the surface into its motion parallel to the surface and into the adsorbed particle to become trapped. These trapped ''hot'' atoms can go on to react with other adsorbed atoms, giving ''hot'' products, as in the Eley-Rideal reaction. We examine the dependence of this mechanism on isotopic substitution and incident energy, in an effort to determine how one might distinguish between the two processes. (C) 1995 American Institute of Physics. [References: 31]
机译:探索了气相H原子与Cu表面吸附的H原子之间直接反应的动力学。通过实施3D量子和准经典散射计算,研究了这种放热的Eley-Rideal反应。假定金属表面为帽子。对于五个不同的模型势能面,详细研究了用D取代一个或两个H原子的效果。计算反应截面以及产物分子的平移,旋转和振动状态分布。考虑一种过程,其中入射原子将垂直于表面的足够的动能转移到其平行于表面的运动中,并转移到被吸附的粒子中。这些被俘获的“热”原子可以继续与其他吸附的原子反应,产生“热”产物,就像在Eley-Rideal反应中一样。我们研究了这种机制对同位素取代和入射能的依赖性,以决定如何区分这两个过程。 (C)1995年美国物理研究所。 [参考:31]

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